The Lyman-α forest as a diagnostic of the nature of the dark matter

Author:

Garzilli Antonella1,Magalich Andrii2,Theuns Tom3,Frenk Carlos S3,Weniger Christoph4,Ruchayskiy Oleg1,Boyarsky Alexey2

Affiliation:

1. Discovery Center, Niels Bohr Institute, Copenhagen University, Blegdamsvej 17, DK-2100 Copenhagen, Denmark

2. Lorentz Institute, Leiden University, Niels Bohrweg 2, Leiden, NL-2333 CA Leiden, the Netherlands

3. Institute for Computational Cosmology, Department of Physics, University of Durham, South Road, Durham DH1 3LE, UK

4. GRAPPA, Institute of Physics, University of Amsterdam, Science Park 904, NL-1098XH Amsterdam, the Netherlands

Abstract

ABSTRACT The observed Lyman-α flux power spectrum (FPS) is suppressed on scales below ${\sim} ~ 30\, {\rm km\, s}^{-1}$. This cut-off could be due to the high temperature, T0, and pressure, p0, of the absorbing gas or, alternatively, it could reflect the free streaming of dark matter particles in the early universe. We perform a set of very high resolution cosmological hydrodynamic simulations in which we vary T0, p0, and the amplitude of the dark matter free streaming, and compare the FPS of mock spectra to the data. We show that the location of the dark matter free-streaming cut-off scales differently with redshift than the cut-off produced by thermal effects and is more pronounced at higher redshift. We, therefore, focus on a comparison to the observed FPS at z > 5. We demonstrate that the FPS cut-off can be fit assuming cold dark matter, but it can be equally well fit assuming that the dark matter consists of ∼7 keV sterile neutrinos in which case the cut-off is due primarily to the dark matter free streaming.

Funder

European Research Council

Science and Technology Facilities Council

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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